Comparative interactomics build the bridges from micromolecules to biological behaviour and morphology

Jinwen Chen
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Abstract

Behaviour, morphology and responses to stimuli in biological systems are determined by the genetic information of different types of biomolecules and the interactions between them. Comparative interactomics, the discipline devoted in comparing two or more interaction networks that happen in different species or under different cellular conditions, is a powerful tool for understanding systems evolution and the complex relationships that control cellular processes. This review provides an overview of data sources and research methods for comparative interactomics and the current directions in the application of comparative interactomics are summarised in brief. We also highlight the potential challenges of comparative interactomics in terms of interaction detection, noise delineation, alignment algorithms and quantitative network upgrading. We provide insights for future studies of network evolution using more accurate experimental and informative methodologies, with the hope that comparative interactomics to be further developed and build the study bridges from micromolecules to biological phenotypes.
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比较相互作用组学架起从微观分子到生物行为和形态的桥梁
生物系统的行为、形态和对刺激的反应是由不同类型生物分子的遗传信息和它们之间的相互作用决定的。比较相互作用组学是一门致力于比较不同物种或不同细胞条件下发生的两种或多种相互作用网络的学科,是了解系统进化和控制细胞过程的复杂关系的有力工具。本综述概述了比较相互作用组学的数据来源和研究方法,并简要总结了比较相互作用组学目前的应用方向。我们还强调了比较相互作用组学在相互作用检测、噪声划分、配准算法和定量网络升级方面的潜在挑战。我们希望比较相互作用组学能得到进一步发展,并搭建起从微观分子到生物表型的研究桥梁。
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